Full 3D Maxwell solver for Inertial Electrostatic Confinement devices
Victor-Otto de Haan
Abstract
Results of a full 3D electromagnetic plasma fusion simulator are presented. It will enable investigations into the influence of structured electromagnetic potentials, anomalous magnetic moments, or charge cluster structures on the fusion yield. The simulator calculates fusion yields similar to those found in real world fusors. In addition, the ion energy and density are accurately simulated. Given that the ion properties arise from a full Maxwell solver there is ample evidence that this part of the simulation is accurate. Concluded with a recommendation for continued research.
Create a lesson
Related papers
Experimental setup for testing nanocalorimeter sensors as a plasma diagnostics tool
Carles Corbella, Feng Yi, Andrei Kolmakov
Gradient-Based Construction of Collisionless Steady-State Guiding-Center Distributions in Tokamaks and Stellarators
Jingyi Yu, Chang Liu
Indirect-Drive Fusion Target Design for Commercial Fusion Energy
C. R. Weber, A. L. Kritcher, S. Bhandarkar et al.
Efficient laser ion acceleration in near-critical density plasmas in the picosecond pulse regime
Joshua Luoma, Andreas Kemp, Andrew Longman et al.
Helicon wave propagation, plasma generation and interaction with low-frequency waves in toroidal magnetic configurations
Simon P. H. Vincent, Mounir Alfazzaa, Patrick Quigley et al.
Kilojoule-scale laser acceleration enabling efficient generation of electron-positron and muon beams
R. Babjak, M. Pouyez, C. Badiali et al.